Leakage Flux based Turn-To-Turn Fault Detection for Shunt Inductor

B. Chen, J. Dong, C. Tian, Q. Chen
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Abstract

Dry-type iron-core inductors in urban high-voltage substation reactive power local balance and reasonable control of voltage fluctuations plays an important role [1]. As its number of applications and uptime increase, the amount of failure must also increase. The most common events of dry-coil devices are interturn faults, which can damage the insulation of the coil and even burn the device when a large current generated in the short-circuit loop. Right now, the low-voltage dry-type iron-core inductors lack a special inter-turn fault detection method and generally use overcurrent protection and temperature detection protection. The zero-sequence and negative-sequence power direction protection are mostly used for ultrahigh-voltage inductors protection [2]– [3]. Therefore, this paper proposes to use the difference of the distribution characteristics of space magnetic field in normal operation and inter-turn fault as the criterion of on-line detection algorithm for turn-to-turn fault [4]–[5]. In this paper, a field-circuit coupled finite element model of a three-phase iron-core inductor is established. The distribution characteristics of the spatial magnetic field under normal operating conditions and different inter-turn fault conditions are simulated and analyzed. This result provides a theoretical basis for the inductor on-line detection algorithm of non-contact turn-to-turn fault.
基于漏磁通的并联电感匝间故障检测
干式铁芯电感在城市高压变电站无功局部平衡和合理控制电压波动中起着重要作用[1]。随着应用程序数量和正常运行时间的增加,故障数量也必然增加。干式线圈器件最常见的故障是匝间故障,当短路回路中产生大电流时,匝间故障会损坏线圈的绝缘,甚至烧毁器件。目前低压干式铁芯电感缺乏专门的匝间故障检测方法,一般采用过流保护和温度检测保护。超高压电感保护多采用零序和负序功率方向保护[2]-[3]。因此,本文提出将正常运行与匝间故障时空间磁场分布特征的差异作为匝间故障在线检测算法的判据[4]-[5]。本文建立了三相铁芯电感的场路耦合有限元模型。模拟分析了正常工作条件和不同匝间故障条件下的空间磁场分布特征。研究结果为非接触匝间故障的电感在线检测算法提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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